BG400F08A13L5
750V 400A high-current IGBT module for EV motor drives. Features low VCE(sat) and high reliability.
Product Overview
Description
750V 400A high-current IGBT power module. Designed for high-power applications.
Low VCE(sat) of 1.65V typical at 25°C. High current density design.
AEC-Q101 automotive qualified. In stock with FAE support.
Product Series
IGBT Module
Primary Application
Key Features
- Trench field-stop IGBT technology
- 750V voltage rating with 400A current capability
- Low VCE(sat) = 1.65V typical
- High current density
- 62mm industry-standard package
- AEC-Q101 automotive qualification
Specifications
| Technology | Standard |
|---|---|
| Voltage | N/A |
| Current | N/A |
| Vce(sat) | N/A |
| Package | N/A |
Applications
High-power EV motor drives
Industrial application for IGBT Modules BG400F08A13L5
Commercial vehicle drives
Industrial application for IGBT Modules BG400F08A13L5
High-power industrial drives
Industrial application for IGBT Modules BG400F08A13L5
Large UPS systems
Industrial application for IGBT Modules BG400F08A13L5
FAE Expert Insights
"BG400F08A13L5 is our high-current workhorse for demanding applications. The 400A rating and robust design make it ideal for commercial vehicles and high-power industrial drives. Proper thermal design is critical for this module."
High-current module for demanding applications
— Senior FAE - High Power Applications, BeiLuo
Frequently Asked Questions
What applications require BG400F08A13L5?
BG400F08A13L5 is designed for high-power applications requiring 300A+ continuous current. Typical applications include: (1) 150-200kW EV motor drives. (2) Commercial vehicle powertrains. (3) High-power industrial motor drives (>100kW). (4) Large UPS systems.
Use for high-power applications requiring >300A continuous current.
What thermal management is required?
BG400F08N13L5 requires robust thermal management due to high power dissipation. Recommended: (1) Heatsink thermal resistance <0.15K/W. (2) Liquid cooling preferred for continuous operation. (3) High-performance thermal interface material. (4) Thermal simulation recommended for worst-case analysis.
Use liquid cooling for continuous high-power operation.